Computational stress and modal analysis of automobile tyre

All of bodies exist in the world may tent to failure because of stress and vibration. Tires are the only components of a vehicle in contact with the road. The interaction between the tire and road generates the forces and vibration. This paper summarizes systematically the behavior of the tire by si...

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Main Author: Iskandar Izany, A Rahman
Format: Undergraduates Project Papers
Language:English
Published: 2008
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Online Access:http://umpir.ump.edu.my/id/eprint/126/1/13.Computational%20stress%20and%20modal%20analysis%20of%20automobile%20tyre.pdf
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spelling my.ump.umpir.1262023-08-15T03:43:38Z http://umpir.ump.edu.my/id/eprint/126/ Computational stress and modal analysis of automobile tyre Iskandar Izany, A Rahman TL Motor vehicles. Aeronautics. Astronautics All of bodies exist in the world may tent to failure because of stress and vibration. Tires are the only components of a vehicle in contact with the road. The interaction between the tire and road generates the forces and vibration. This paper summarizes systematically the behavior of the tire by simulated using finite element method. The objective of this project is to analyze the stress and modal analysis of the tire. The tire modeled in Computer Aided Design (CAD) using SolidWork software. ALGOR software from Computer Aided Engineering (CAE) will be analyzed the tire model. In the stress analysis, the force was assumed to be vertical (z-direction) reaction force generated at the tire contact patch. The contact patch dimensions were assumed about a central angle of 300 from either side of the point of contact with the ground. The tire was applied a vertically force with 1000 N until 5000 N. According to the analysis is expected that the contact patch and belt edge separation receive high stress concentration. The values of the maximum Stress Von Misses are about 0.872322 until 4.54497 N/mm2. The maximum values for stress are increasing when the forces applied are increased. The natural frequency analysis from FEA was compared to the experimental data. Result shows that 1st natural frequency (57.9038 Hz), 2nd natural frequency (65.1867 Hz), 3rd natural frequency (65.7771 Hz) and 4th natural frequency (70.8319 Hz). Through this project, there will be no big different value for both methods. The percentage of error is around 30% from the experimental result. Finally it can be conclude that, in order to obtain the behavior of the tire such as stress and vibration, stress and modal analysis can be carried out. Reducing the vibration and stress will be very useful and enhance a good quality of riding. Once the tire lack, the overall part of the car will be affected. 2008-11 Undergraduates Project Papers NonPeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/126/1/13.Computational%20stress%20and%20modal%20analysis%20of%20automobile%20tyre.pdf Iskandar Izany, A Rahman (2008) Computational stress and modal analysis of automobile tyre. Faculty of Mechanical Engineering, Universiti Malaysia Pahang.
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
topic TL Motor vehicles. Aeronautics. Astronautics
spellingShingle TL Motor vehicles. Aeronautics. Astronautics
Iskandar Izany, A Rahman
Computational stress and modal analysis of automobile tyre
description All of bodies exist in the world may tent to failure because of stress and vibration. Tires are the only components of a vehicle in contact with the road. The interaction between the tire and road generates the forces and vibration. This paper summarizes systematically the behavior of the tire by simulated using finite element method. The objective of this project is to analyze the stress and modal analysis of the tire. The tire modeled in Computer Aided Design (CAD) using SolidWork software. ALGOR software from Computer Aided Engineering (CAE) will be analyzed the tire model. In the stress analysis, the force was assumed to be vertical (z-direction) reaction force generated at the tire contact patch. The contact patch dimensions were assumed about a central angle of 300 from either side of the point of contact with the ground. The tire was applied a vertically force with 1000 N until 5000 N. According to the analysis is expected that the contact patch and belt edge separation receive high stress concentration. The values of the maximum Stress Von Misses are about 0.872322 until 4.54497 N/mm2. The maximum values for stress are increasing when the forces applied are increased. The natural frequency analysis from FEA was compared to the experimental data. Result shows that 1st natural frequency (57.9038 Hz), 2nd natural frequency (65.1867 Hz), 3rd natural frequency (65.7771 Hz) and 4th natural frequency (70.8319 Hz). Through this project, there will be no big different value for both methods. The percentage of error is around 30% from the experimental result. Finally it can be conclude that, in order to obtain the behavior of the tire such as stress and vibration, stress and modal analysis can be carried out. Reducing the vibration and stress will be very useful and enhance a good quality of riding. Once the tire lack, the overall part of the car will be affected.
format Undergraduates Project Papers
author Iskandar Izany, A Rahman
author_facet Iskandar Izany, A Rahman
author_sort Iskandar Izany, A Rahman
title Computational stress and modal analysis of automobile tyre
title_short Computational stress and modal analysis of automobile tyre
title_full Computational stress and modal analysis of automobile tyre
title_fullStr Computational stress and modal analysis of automobile tyre
title_full_unstemmed Computational stress and modal analysis of automobile tyre
title_sort computational stress and modal analysis of automobile tyre
publishDate 2008
url http://umpir.ump.edu.my/id/eprint/126/1/13.Computational%20stress%20and%20modal%20analysis%20of%20automobile%20tyre.pdf
http://umpir.ump.edu.my/id/eprint/126/
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score 13.209306